The invention relates to a hinge assembly comprising a hinge, especially a cup hinge, and an autonomous remote switch unit, wherein the hinge is composed of two hinge parts that are connected by an intermediate joint of which a first hinge part is connected to a stationary component, and a second hinge part is coupled via the joint to a pivoting element, especially a door, to pivot relative to the first hinge part, and wherein the autonomous remote switch unit comprises a radio unit and a generator unit having an actuation element that transmits an opening and closing of the hinge to the generator unit such that the generator unit induces an electrical current pulse to supply power to the radio unit.
Hinge assemblies are used for door systems or items of furniture, for example, in order to open and close doors or flaps. Frequently, contact switches are provided in the region of a hinge of the respective hinge assembly that detect opening and closing of the hinge, and hence a corresponding movement of the associated door or flap. By means of this detection of the hinge movement, certain functions can then be activated, such as light applications or safety-relevant functions.
A hinge assembly is known from DE 24 36 225 A1 which is used as a safety device in the region of a door. This hinge assembly comprises a hinge that is composed of two hinge parts connected by an intermediate joint. In the region of a first, fixed hinge part, there is an autonomous remote switch unit which is composed of a radio unit and a generator unit. The radio unit and the generator unit are each accommodated in cylindrical housings and extend orthogonally to the first hinge part in a direction opposite the second, movable hinge part. The generator unit has an actuation element which extends through a cutout in the first hinge part toward the second hinge part that it contacts when the hinge closes. A cylindrical permanent magnet is thereby shifted and locked into a standby position within the generator unit. If the door, and hence the hinge as well, is opened, the actuation element of this generator unit is moved back into a home position by means of an integrated spring and entrains the cylindrical permanent magnet along with it at the end of the movement. The cylindrical magnet is then suddenly moved to the middle of a coil pack which causes the induction of an electrical current pulse, by means of which current is supplied to the radio unit. When power is supplied, the radio unit transmits a signal at a specific frequency, whereby an opening of the door corresponding to the signal is detected in a receiver unit to the side of the hinge assembly. A security system can thereby be formed by means of which opening of the door is detected by an autonomous remote switch unit.
Proceeding from a prior art hinge assembly, it is the object of the present invention to provide a hinge assembly in which an opening and closing of a hinge can be reliably detected in a space-saving manner and transmitted as a signal.
According to the invention, the hinge assembly comprises a hinge and an autonomous remote switch unit, wherein the hinge is composed of two hinge parts connected by an intermediate joint. In particular, the hinge is designed in this case as a cup hinge in which a first hinge part is formed as a hinge arm that is connected to a stationary component such as an item of furniture or a door frame, whereas a second hinge part that can pivot relative to the first hinge part is formed as a hinge cup which is flush-mounted in a body, such as a door or flap, which can pivot relative to the fixed element. In the context of the invention, however, other embodiments of the hinges are also conceivable—in the simplest case, by two screw-mounted surfaces connected by means of an intermediate joint. The autonomous remote switch unit comprises a radio unit and a generator unit equipped with an actuation element, wherein an opening and closing of the hinge is transmitted by the actuation element to the generator unit where it triggers the induction of an electrical current pulse to supply power to the radio unit. The generator unit in the context of the invention can either be designed as an electrodynamic or piezoelectric converter that converts the mechanical movement of the actuation element into a current pulse. It is possible to use transmission units as the radio unit, by means of which data packages, in particular, can be transmitted in high-frequency signals.
The invention comprises the technical teaching that the generator unit induces an electrical current pulse, both when the hinge closes and opens, from the movement transmitted to it by the actuation element, and the current pulse then supplies current to the radio unit which then transmits data. Since the generator unit induces an electrical current pulse for both of the directions of movement of the associated hinge, these movements can be detected by a single autonomous remote switch unit in a compact manner. By then transmitting data to a higher level receiver system, numerous subsequent functions can be linked to the detected movements of the hinge. According to the invention, the radio unit transmits, in particular, data packages similar to a wireless network (WLAN), whereby the transmission of additional information beyond the movement of the hinge is also conceivable. In particular, it is possible to transmit an ambient temperature that has been detected by a temperature sensor integrated in the radio unit or disposed adjacent thereto.
In contrast in DE 24 36 225 A1, it is only possible to induce a current pulse when opening the hinge. Furthermore, the radio unit in this case only sends one signal in the form of a specific frequency which greatly restricts transmission of information and the control of subsequent functions. In addition, transmitting a signal at a specific frequency in combination with other existing radio systems sometimes causes problematic overlapping.
According to one embodiment of the invention, the autonomous remote switch unit is disposed on the first hinge part, the actuation element coming into contact with the second hinge part or the element to be pivoted when the hinge closes. The advantage of disposing the autonomous remote switch unit on the stationary component is that the number of moved components can be kept low while simultaneously detecting an opening and closing of the hinge. Disposing the autonomous remote switch unit on the first hinge part is to be understood as placing the remote switch unit on the first hinge part to the side of a plane formed by the two hinge parts when the hinge opens and closes, or also placing the remote switch unit on the first hinge part within this plane.
In a development of this embodiment, a transmission element is placed between the second hinge part, or the element to be pivoted and the actuation element, the transmission element establishing contact when the hinge closes between the second hinge part and the actuation element, or the element to be pivoted and the actuation element. Transmitting the movement of the hinge to the actuation element by means of the transmission element also allows the autonomous remote switch unit to be at further distance from the second hinge part, or the element to be pivoted, which enables a more individual arrangement depending on the given space conditions.
The transmission element is advantageously movably guided on the first hinge part in a slot and transmits the closing of the hinge by moving in the slot toward the actuation element. This guide in the first hinge part allows a reliable transmission of the movement to be realized. Corresponding to a particularly advantageous embodiment, the transmission element in the slot moves against a spring when the hinge closes and thereby actuates the actuation element by means of a contour. The advantage is that the spring thereby dampens a movement of the transmission element when the hinge closes, and thereby also causes a dampening of a closing movement of the element to be pivoted. By controlling the actuation element of the generator unit by means of the contour of the transmission element, it is possible to largely decouple from the hinge damping which is thereby generated.
According to another advantageous embodiment of the invention, the transmission element is placed in a common housing with the autonomous switch unit. This can prevent undesired impairment of the transmission element and the autonomous remote switch unit.
Corresponding to an alternative embodiment of the present invention, the transmission element is formed on the second hinge part or element to be pivoted, and has a curved contour. A closing movement of the hinge can also be reliably transmitted to the actuation element of the generator element by means of such an embodiment. The curved contour of the transmission element allows a smooth actuation of the generator unit to be realized by means of the pivoting movement of the second hinge part and the element to be pivoted. A curvature of the contour should correspond to an effective pivoting radius in the region where the transmission element is placed.
As an additional alternative, the autonomous remote switch unit is integrated in a recess of the second hinge part, wherein the actuation element comes into contact with the first hinge part, or the stationary component, when the hinge closes. The advantage is that integration in the second hinge part enables an extremely compact design of a hinge assembly with an independent remote switch unit.
In a development of the initially cited variation, the generator unit is designed as an electrodynamic generator with a coil pack and a magnet block. The coil pack is oriented perpendicular to the direction of actuation of the actuation element, and the magnet block, by moving across the actuation element, induces a current pulse in the coil pack by an associated polarity reversal of a coil core. A compact embodiment of a generator unit can be achieved by orienting the coil pack in a perpendicular direction relative to the direction the actuation of the magnet block. Overall, this enables problem-free placement in the region of one of the two hinge parts.
Corresponding to another advantageous embodiment of the invention, the actuation element of the generator unit is designed as a spring-mounted tongue. When the hinge opens, this also advantageously generates a movement in the generator unit which triggers a current pulse in that the spring-mounted tongue ensures a return movement of moved parts. Furthermore, with a corresponding embodiment, the spring-mounted tongue can also be designed as a stop damper for the hinge.
The invention is not restricted to the specified combination of features of the main switch or the dependent claims. Furthermore, there are options for combining individual features with each other from the claims, subsequent description of the embodiments, or directly from the drawings. The reference in the claims to the drawings by the use of reference numbers does not restrict the scope of protection of the claims.
Along with the description of preferred embodiments of the invention, additional measures for improving the invention will be described in greater detail below with reference to the figures. They show:
FIG. 1A to 1CA side view of a first preferred embodiment of the hinge assembly according to the invention shown in an open and closed state of the hinge assembly as well as a transition between these two states;
As can additionally be seen in
As can also be seen in
The tongue 11 is actuated in the first preferred embodiment according to
A second preferred embodiment of the hinge assembly according to the invention is revealed in
An additional third preferred embodiment of the invention is depicted in
Furthermore,
Lastly,
The embodiments according to the invention of a hinge assembly therefore make it possible to detect opening and closing of a hinge 1 with the assistance of a compactly designed autonomous remote switch unit 6, and to send this information to a higher level receiving unit. Within the context of the invention, it is also conceivable to connect the radio unit 7 of the remote switch unit 6 to additional sensors such as a temperature sensor in order to transmit additional information, in addition to the state of the hinge 1, in data packages, when there is a current pulse. Overall, a robust and reliable detection of the opening and closing of the assigned hinge 1 is realized with the different arrangements of the autonomous remote switch unit 6.
1 Hinge
2 Joint
3 First hinge part
4 Second hinge part
5 Door
6 Autonomous remote switch unit
7 Radio unit
8 Generator unit
9 Coil pack
10 Magnet block
11 Tongue
12 Coil core
13 First pole
14 Second pole
15 Projection
16 Transmission element
17 Seat
18 Transmission element
19 Recess
20 Seat
21 Transmission element
22 Spring
23 Contour
24 Housing
Number | Date | Country | Kind |
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102011005336.0 | Mar 2011 | DE | national |
This application is a National Stage completion of PCT/EP2012/052321 filed Feb. 10, 2012, which claims priority from German patent application serial no. 10 2011 005 336.0 filed Mar. 10, 2011.
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP2012/052321 | 2/10/2012 | WO | 00 | 9/4/2013 |